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Process Calorimetry on Solid-state Fermentation of Vinegar Wastes in Bioreactor with Air Pressure Pulsation

机译:气压脉动对生物反应器中食醋废物进行固态发酵的过程量热法

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Abstract Solid-state fermentation (SSF) of vinegar wastes saves environmental resources and to recover valuable material for lignocellulose purposes. The development of solid-state fermentation technology is very important for the production of cellulase and ultimately for utilization of natural cellulose. However, inadequate dissipation of heat generated by biological activities has prevented solid-state fermentation from large-scale applications. The thermal pattern of internal heat generation affects microbiology during the process. The paper deals with the process of a novel SSF bioreactor with air pressure pulsation. We demonstrate the impact of calorimetric approaches to solid-state fermentation in the laboratory, where heat dissipation calls for a thorough understanding. As a model system, cellulase production was carried out by solid-state fermentation using waste from the vinegar industry, as the substrate of Trichoderma Koningii AS3.4262. A comprehensive characterization of a lab-scale solid-state fermentation reactor was performed. In conclusion, air pressure pulsation significantly enhanced water evaporation and heat dissipation. With these tools we estimated caloric coefficients and mass to enthalpy ratios. Process calorimetry provided a reliable way to study the kinetics of solid-state fermentation.
机译:摘要醋废料的固态发酵(SSF)节省了环境资源,并回收了用于木质纤维素用途的有价值的材料。固态发酵技术的发展对于纤维素酶的生产以及最终对天然纤维素的利用非常重要。但是,由于生物活动产生的热量散发不充分,导致固态发酵无法进行大规模应用。内部生热的热模式会在此过程中影响微生物。本文探讨了一种新型的具有空气压力脉动的SSF生物反应器的过程。我们在实验室中展示了量热法对固态发酵的影响,在该实验室中,散热需要深入了解。作为模型系统,纤维素酶的生产是通过使用醋工业废料作为木霉菌Triningderma Koningii AS3.4262的底物,通过固态发酵进行的。进行了实验室规模的固态发酵反应器的全面表征。总之,气压脉动显着增强了水的蒸发和散热。使用这些工具,我们可以估算热量系数和质量焓比。工艺量热法提供了一种可靠的方法来研究固态发酵的动力学。

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